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首页> 外文期刊>Environmental Science and Pollution Research >Fate and effects of metal-based nanoparticles in two marine invertebrates, the bivalve mollusc Scrobicularia plana and the annelid polychaete Hediste diversicolor
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Fate and effects of metal-based nanoparticles in two marine invertebrates, the bivalve mollusc Scrobicularia plana and the annelid polychaete Hediste diversicolor

机译:金属基纳米颗粒在两种海洋无脊椎动物中的命运和影响:双壳软体动物Scrobicularia Plana和无脊椎动物多壳He Hediste diversicolor

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摘要

The objective of this paper is to synthesize results from seven published research papers employing different experimental approaches to evaluate the fate of metal-based nanoparticles (Ag NPs, Au NPs, CuO NPs, CdS NPs, ZnO NPs) in the marine environment and their effects on two marine endobenthic species, the bivalve Scrobicularia plana and the ragworm Hediste diversicolor. The experiments were carried out under laboratory (microcosms) conditions or under environmentally realistic conditions in outdoor mesocosms. Based on results from these seven papers, we addressed the following research questions: (1) How did the environment into which nanoparticles were released affect their physicochemical properties?, (2) How did the route of exposure (seawater, food, sediment) influence bioaccumulation and effects?, (3) Which biomarkers were the most responsive? and (4) Which tools were the most efficient to evaluate the fate and effects of NPs in the marine environment? The obtained results showed that metal-based NPs in general were highly agglomerated/aggregated in seawater. DGT tools could be used to estimate the bioavailability of metals released from NPs under soluble form in the aquatic environment. Both metal forms (nanoparticulate, soluble) were generally bioaccumulated in both species. Among biochemical tools, GST and CAT were the most sensitive revealing the enhancement of anti-oxidant defenses in both species exposed to sub-lethal concentrations of metal-based NPs. Apoptosis and genotoxicity were frequently observed.
机译:本文的目的是综合七篇已发表的研究论文的结果,这些论文采用不同的实验方法来评估金属基纳米颗粒(Ag NP,Au NP,CuO NP,CdS NP,ZnO NP)的命运及其影响在两个海洋底栖动物种类上,双壳类Scrobicularia Plana和the虫Hediste diversicolor。实验是在实验室(微观)条件下或在环境现实条件下在室外中观环境下进行的。基于这七篇论文的结果,我们解决了以下研究问题:(1)纳米颗粒被释放到的环境如何影响其理化性质?,(2)暴露途径(海水,食物,沉积物)如何影响生物蓄积和影响?,(3)哪些生物标记最敏感? (4)哪些工具最有效地评估了NP在海洋环境中的命运和影响?所得结果表明,金属基NP通常在海水中高度聚集/聚集。 DGT工具可用于估算在水生环境中以可溶性形式从NP释放的金属的生物利用度。两种金属形式(纳米颗粒,可溶)通常都在两种物种中生物富集。在生化工具中,GST和CAT最敏感,这表明暴露于亚致死浓度的金属基NP的两个物种中抗氧化防御能力均得到增强。经常观察到细胞凋亡和遗传毒性。

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